The Experts below are selected from a list of 12300 Experts worldwide ranked by ideXlab platform

Masugi Inoue - One of the best experts on this subject based on the ideXlab platform.

  • an id locator Split Architecture for future networks
    IEEE Communications Magazine, 2010
    Co-Authors: Ved P. Kafle, Hideki Otsuki, Masugi Inoue
    Abstract:

    The ID/locator Split concept has recently been introduced in the standardization activities of ITU-T study group 13 for use in future networks. To contribute to ITU-T's initiative, we first propose a naming system to configure host-names and identifiers and map them to locators. We then propose a network Architecture that is based on the ID/locator Split concept and the naming system. The proposed Architecture allows the network layer to change protocols and locators without disturbing the upper-layer communication sessions. This capability is helpful for designing efficient solutions for mobility, multi-homing, routing, and security as well as for integrating heterogeneous network layer protocols.

  • an id locator Split Architecture of future networks
    2009 ITU-T Kaleidoscope: Innovations for Digital Inclusions, 2009
    Co-Authors: Ved P. Kafle, Hideki Otsuki, Masugi Inoue
    Abstract:

    The ID/locator Split concept has recently been introduced into the ITU-T Study Group 13's standardization activities for future networks. To contribute to ITU-T's this effort, we first propose a naming system, called Host Name and Identifier System (HNIS). We show how host names and host identifiers (IDs) are generated and mapped to each other. We then present a new network Architecture based on the ID/locator Split concept and the naming system. The proposed Architecture allows the network layer protocols to change locators without requiring the upper layers to change IDs. This capability is helpful for designing efficient solutions to mobility, multihoming, routing and security as well as integrating heterogeneous network layer protocols.

Ved P. Kafle - One of the best experts on this subject based on the ideXlab platform.

  • An integrated security scheme for ID/locator Split Architecture of future network
    2012 IEEE International Conference on Communications (ICC), 2012
    Co-Authors: Ved P. Kafle, Ruidong Li, Daisuke Inoue, Hiroaki Harai
    Abstract:

    For the sake of better scalability and flexibility in the mobile and multihoming environments, future networks are expected to be based on the concept of ID/locator Split. The ID/locator Split Architectures require storing, updating and retrieving of ID/locator mappings frequently, for which they need built-in security. To address this issue, this paper presents an integrated security scheme for securely storing, updating and retrieving hostnames to IDs and locators mapping records in two layers of name registries: domain name registries and host name registries. It then utilizes the mapping records retrieved from the registries for securing the network access, communication sessions, and mobility management functions. The scheme provides comprehensive protection of the ID/locator Split Architecture through an effective combination of asymmetric and symmetric cryptographic functions.

  • an id locator Split Architecture for future networks
    IEEE Communications Magazine, 2010
    Co-Authors: Ved P. Kafle, Hideki Otsuki, Masugi Inoue
    Abstract:

    The ID/locator Split concept has recently been introduced in the standardization activities of ITU-T study group 13 for use in future networks. To contribute to ITU-T's initiative, we first propose a naming system to configure host-names and identifiers and map them to locators. We then propose a network Architecture that is based on the ID/locator Split concept and the naming system. The proposed Architecture allows the network layer to change protocols and locators without disturbing the upper-layer communication sessions. This capability is helpful for designing efficient solutions for mobility, multi-homing, routing, and security as well as for integrating heterogeneous network layer protocols.

  • an id locator Split Architecture of future networks
    2009 ITU-T Kaleidoscope: Innovations for Digital Inclusions, 2009
    Co-Authors: Ved P. Kafle, Hideki Otsuki, Masugi Inoue
    Abstract:

    The ID/locator Split concept has recently been introduced into the ITU-T Study Group 13's standardization activities for future networks. To contribute to ITU-T's this effort, we first propose a naming system, called Host Name and Identifier System (HNIS). We show how host names and host identifiers (IDs) are generated and mapped to each other. We then present a new network Architecture based on the ID/locator Split concept and the naming system. The proposed Architecture allows the network layer protocols to change locators without requiring the upper layers to change IDs. This capability is helpful for designing efficient solutions to mobility, multihoming, routing and security as well as integrating heterogeneous network layer protocols.

J M Miller - One of the best experts on this subject based on the ideXlab platform.

  • hybrid electric vehicle propulsion system Architectures of the e cvt type
    IEEE Transactions on Power Electronics, 2006
    Co-Authors: J M Miller
    Abstract:

    There is now significant interest in hybrid electric vehicle (HEV) propulsion systems globally. Economics play a major role as evidenced by oil prices in North America pressing upwards of $100/Bbl coupled with a customer preference for full size crossover and sport utility vehicles. The situation in Oceania is milder, but emerging markets such as China are experiencing automotive sector growth rates of 37%/year. Europe remains least affected by hybrids since nearly 47% of all new vehicles sold are diesel fueled and have economy ratings on par with that of gasoline-electric hybrids. In the global economy there are presently some 57 Mil new vehicles manufactured each year. Toyota and Honda have projected that HEVs will be 10 % to 15 % of the U.S. market by 2009, with Toyota raising the bar further by stating they will produce 1 Mil hybrids a year in the 2012 time frame. Hybrid propulsion system types are only vaguely comprehended by the buying public, and to a large measure, even by technical professionals. This paper addresses this latter issue by presenting a summary of the globally accepted standard in hybrid power trains-the power Split Architecture, or more generically and in common usage, the electronic-continuously variable transmission

  • an assessment of ultra capacitors as the power cache in toyota ths ii gm allision ahs 2 and ford fhs hybrid propulsion systems
    Applied Power Electronics Conference, 2005
    Co-Authors: J M Miller, M Everett
    Abstract:

    In this paper a brief history of the development paths leading to power Split concepts is given. The power Split Architecture is used as the comparison platform because the global OEM's have converged to the electronic CVT in two different configurations, Toyota and Ford to the single epicyclic gear set, THS and FHS respectively and GM-Allison to the dual epicyclic gear set, AHS designs, each requiring a pair of electric motor-generators in order to deliver their intended function. The power electronic Architecture for the Toyota Hybrid System, THS can be in either a battery unbuffered THS-I or battery buffered via a buck/boost converter as in THS-II. The GM-Allison Advanced Hybrid System, AHS is configured as a battery unbuffered configuration, but it could also be realized using the battery buffered configuration. Benefits of ultra-capacitor augmentation of the energy storage system in both unbuffered and buffered configurations are investigated

Hideki Otsuki - One of the best experts on this subject based on the ideXlab platform.

  • an id locator Split Architecture for future networks
    IEEE Communications Magazine, 2010
    Co-Authors: Ved P. Kafle, Hideki Otsuki, Masugi Inoue
    Abstract:

    The ID/locator Split concept has recently been introduced in the standardization activities of ITU-T study group 13 for use in future networks. To contribute to ITU-T's initiative, we first propose a naming system to configure host-names and identifiers and map them to locators. We then propose a network Architecture that is based on the ID/locator Split concept and the naming system. The proposed Architecture allows the network layer to change protocols and locators without disturbing the upper-layer communication sessions. This capability is helpful for designing efficient solutions for mobility, multi-homing, routing, and security as well as for integrating heterogeneous network layer protocols.

  • an id locator Split Architecture of future networks
    2009 ITU-T Kaleidoscope: Innovations for Digital Inclusions, 2009
    Co-Authors: Ved P. Kafle, Hideki Otsuki, Masugi Inoue
    Abstract:

    The ID/locator Split concept has recently been introduced into the ITU-T Study Group 13's standardization activities for future networks. To contribute to ITU-T's this effort, we first propose a naming system, called Host Name and Identifier System (HNIS). We show how host names and host identifiers (IDs) are generated and mapped to each other. We then present a new network Architecture based on the ID/locator Split concept and the naming system. The proposed Architecture allows the network layer protocols to change locators without requiring the upper layers to change IDs. This capability is helpful for designing efficient solutions to mobility, multihoming, routing and security as well as integrating heterogeneous network layer protocols.

Mic Bowman - One of the best experts on this subject based on the ideXlab platform.

  • Enhanced MILSA Architecture for Naming, Addressing, Routing and Security Issues in the Next Generation Internet
    2009 IEEE International Conference on Communications, 2009
    Co-Authors: Rakesh Jain, Mic Bowman, Xiaolong Xu, S Paul, Shuxin Chen
    Abstract:

    MILSA (Mobility and Multihoming supporting Identifier Locator Split Architecture) has been proposed to address the naming and addressing challenges for NGI (next generation Internet), we present several design enhancements for MILSA which include a hybrid architectural design that combines "core-edge separation approach" and "Split approach", a security-enabled and logically oriented hierarchical identifier system, a three-level identifier resolution system, a new hierarchical code based design for locator structure, cooperative mechanisms among the three planes in MILSA model to assist mapping and routing, and an integrated MILSA service model. The underlying design rationale is also discussed along with the design descriptions. Further analysis addressing the IRTF (Internet Research Task Force) RRG (Routing Research Group) design goals shows that the enhanced MILSA provides comprehensive benefits in routing scalability, traffic engineering, mobility and multihoming, renumbering, security, and deployability.

  • milsa a mobility and multihoming supporting identifier locator Split Architecture for naming in the next generation internet
    Global Communications Conference, 2008
    Co-Authors: Jianli Pan, Subharthi Paul, Raj Jain, Mic Bowman
    Abstract:

    Naming and addressing are important issues for next generation Internet (NGI). In this paper, we discuss a new mobility and multihoming supporting identifier locator Split Architecture (MILSA). There are three main contributions of our solution. First, we separate trust relationships (realms) from connectivity (zones). A hierarchical identifier system for the realms and a Realm Zone Bridging Server (RZBS) infrastructure that performs the bridging function is introduced. Second, we separate the signaling and data plane functions to improve the performance and support mobility. Third, to provide transparency to the upper layer applications, identifier locator Split happens in network layer. A Hierarchical URI-like Identifier (HUI) is used by the upper layers and is mapped to a locators set by HUI Mapping Sublayer (HMS) through interaction with RZBS infrastructure. Further scenarios description and analysis show the benefits of this scheme for routing scalability, mobility and multihoming.